Investigating Genetic Mechanisms of Tissue Remodelling in the Inflamed Gut
In plain English
AI plain-English summaryInflammatory bowel disease twists the gut’s structural scaffolding, yet scientists do not understand how immune cells drive that damage. More than 240 genetic regions are linked to IBD, but the function of most remains unknown. This project focuses on one specific DNA variant on chromosome 22 that appears to alter how macrophages—immune cells involved in both inflammation and repair—produce PDGFB, a protein that activates fibroblasts and remodels tissue. The researcher has built a 3D human gut model that mimics the native extracellular matrix, allowing direct observation of how macrophages and fibroblasts interact in a realistic environment. Using patient-derived cells, gene editing, and high-resolution imaging, the work will trace the exact molecular pathways from genetic variant to tissue distortion. This is fundamental science. If successful, it will reveal a concrete mechanism linking a common genetic risk factor to gut scarring in IBD. That knowledge could eventually point to new drug targets for preventing tissue damage in chronic inflammation—not just in the gut, but potentially in other organs where fibrosis drives disease.
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